English

Twist analysis of the spin-orbit correlation in QCD

High Energy Physics - Phenomenology 2024-08-21 v2

Abstract

We present a QCD analysis of the twist-three parton distribution functions associated with the spin-orbit correlation of quarks and gluons in spin-12\frac{1}{2} and spin-0 hadrons. We derive exact non-perturbative identities decomposing the spin-orbit correlations into the Wandzura-Wilczek part and the genuine twist-three part. In the spin-12\frac{1}{2} case, the result is partially related to the kinematical twist-three part of the gT(x)g_T(x) distribution familiar in the context of transverse spin physics. We use these identities to obtain a novel longitudinal momentum sum rule which may be regarded as the momentum version of the Jaffe-Manohar spin sum rule. We explore the physical interpretation of the sum rule and make a connection to the color Lorentz forces and their associated potential energies.

Keywords

Cite

@article{arxiv.2404.18872,
  title  = {Twist analysis of the spin-orbit correlation in QCD},
  author = {Yoshitaka Hatta and Jakob Schoenleber},
  journal= {arXiv preprint arXiv:2404.18872},
  year   = {2024}
}

Comments

v2: significantly expanded, physical meaning of sum rule discussed